MMP3 Knockout cell line (HEK293)

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MMP3 Knockout cell line (HEK293)

MMP3 Knockout cell line (HEK293) Order

Catalog#YKO-H750

Price (USD)-

Size 1*10^6

Instruction

Exclusive Red Cotton system(en.rc-crispr.com)was used to design the sgRNA fragment knockout strategy. Two sgRNAs were constructed into CRISPR-U™ plasmid which will be subsequentially transfected into cells by electroporation/virus method. And the single-cell clones were isolated by the limited dilution method and the Monoclone Genotype Validation Kit (Cat: YK-MV-1000) was used for cell lysis and PCR amplification on the single-cell clones, and then the genotype was verified by Sanger sequencing. Upon passing the final validation, the positive clones were expanded and cryopreserved.

Cell Info

Catalog YKO-H750
Cell line MMP3 Knockout cell line (HEK293) Cell Type Human Embryonic Kidney Cell Line
Morphology Epithelial-like, adherent Passage ratio 1:4~1:6
Culture method 90%DMEM+10% FBS
Cryopreservation solution 50%DMEM+40% FBS+10%DMSO
Special Note

STR Validation

Gene Information

Official symbol
MMP3
Gene id
4314
Official full symbol
matrix metallopeptidase 3
Also known as
CHDS6, MMP-3, SL-1, STMY, STMY1, STR1
Proteins of the matrix metalloproteinase (MMP) family are involved in the breakdown of extracellular matrix in normal physiological processes, such as embryonic development, reproduction, and tissue remodeling, as well as in disease processes, such as arthritis and metastasis. Most MMP's are secreted as inactive proproteins which are activated when cleaved by extracellular proteinases. This gene encodes an enzyme which degrades fibronectin, laminin, collagens III, IV, IX, and X, and cartilage proteoglycans. The enzyme is thought to be involved in wound repair, progression of atherosclerosis, and tumor initiation. The gene is part of a cluster of MMP genes which localize to chromosome 11q22.3.

KO strategy

Knockout region: Exon 2 (based on transcript MMP3-201)
Validation: PCR+Sanger Sequencing

Method

Exclusive Red Cotton system(en.rc-crispr.com)was used to design the sgRNA fragment knockout strategy. Two sgRNAs were constructed into CRISPR-U™ plasmid which will be subsequentially transfected into cells by electroporation/virus method. And the single-cell clones were isolated by the limited dilution method and the Monoclone Genotype Validation Kit (Cat: YK-MV-1000) was used for cell lysis and PCR amplification on the single-cell clones, and then the genotype was verified by Sanger sequencing. Upon passing the final validation, the positive clones were expanded and cryopreserved.

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